Журналы →  Горный журнал →  2024 →  №9 →  Назад

ГОРНОПРОМЫШЛЕННАЯ И НЕФТЕПРОМЫСЛОВАЯ ГЕОЛОГИЯ, ГЕОФИЗИКА
Название Вариативность удельного электрического сопротивления горных пород при измерениях на токах разной частоты
DOI 10.17580/gzh.2024.09.06
Автор Данильев С. М., Смук Г. В.
Информация об авторе

Санкт-Петербургский горный университет императрицы Екатерины II, Санкт-Петербург, Россия

Данильев С. М., доцент, канд. геол.-минерал. наук, Danilev_sm@pers.spmi.ru
Смук Г. В., студент

Реферат

Рассмотрены результаты экспериментальных лабораторных исследований зависимости удельного электрического сопротивления от частоты пропускаемого тока через образцы горных пород. Получены качественные и количественные соотношения для исследуемых образцов с общей величиной достоверности аппроксимации в основном более 0,97, что позволяет использовать данные зависимости для построения моделей геоэлектрических разрезов по результатам измерений на переменном токе и классических методов сопротивлений.

Ключевые слова Удельное электрическое сопротивление, частотная дисперсия, достоверность аппроксимации, линейная регрессия
Библиографический список

1. Krizskii V. N., Kosarev O. V., Aleksandrov P. N., Luntovskaya Ya. A. Mathematical modeling of the electric field of an in-line diagnostic probe of a cathode-polarized pipeline. Journal of Mining Institute. 2024. Vol. 265. pp. 156–164.
2. Zinchenko V. S. Basic Petrophysics for Hydrogeological and Engineering-Geological Interpretation of Geophysical Data : Tutorial. Moscow–Tver : AIS, 2005. 392 p.
3. Glazunov V. V., Burlutsky S. B., Shuvalova R. A., Zhdanov S. V. Improving the reliability of 3D modelling of a landslide slope based on engineering geophysics data. Journal of Mining Institute. 2022. Vol. 257. pp. 771–782.
4. Glazunov V. V., Ageev A. S., Gorelik G. D., Sarapulkina T. V. Results of comprehensive geophysical studies on the search for crypts on the territory of suburban necropolis of tauric chersonese in the Karantinnaya Balka. Journal of Mining Institute. 2021. Vol. 247. pp. 12–19.
5. Mingaleva T. A., Shakuro S. V., Egorov A. S. Features of the structure and nature of pollution of the upper part of the section of oil storage facilities in the Volga river valley. Bulletin of the Tomsk Polytechnic University, Geo Assets Engineering. 2023. Vol. 334, No. 7. pp. 137–147.
6. Shevnin V. A., Kvon D. A., Ryzhov A. A. Petrophysical approach to electrical properties of loose soils. Journal of Mining Institute. 2017. Vol. 226. pp. 397–404.
7. Suzuki T., Yoshimura R., Yamazaki K., Minami T., Sawayama K. et al. Dependence of resistivity of natural rock samples on humidity. Journal of Applied Geophysics. 2024. Vol. 220. ID 105271.
8. Iselidze O. V., Zhukov V. S., Tsybulsky S. P., Bayanova N. G. Influence of temperature on specific electroresistance of the water-saturated sandstone. News of Gas Science : Problems of Development of Gas, Gas Condensate and Oil/Gas/Condensate Fields : Scientific and Technical Collection of Papers. Moscow : Gazprom VNIIGAZ, 2014. No. 4(20). pp. 184–187.
9. Grigorev G. S., Salishchev M. V., Senchina N. P. On the applicability of electromagnetic monitoring of hydraulic fracturing. Journal of Mining Institute. 2021. Vol. 250. pp. 492–500.
10. Yu Z., Jun J., Hua H., Yao D., Hongyi A. et al. Resistivity correction and water saturation evaluation for calcareous tight sandstone reservoir: A case study of Goil field in Sichuan Basin. Frontiers in Earth Science. 2022. Vol. 10. ID 1099848.
11. Al-Ofi S., Ma S., Kesserwan H., Jin G. A New Approach to estimate Archie parameters m and n independently from dielectric measurements. SPWLA 63rd Annual Logging Symposium. Stavanger, 2022. DOI: 10.30632/SPWLA-2022-0002
12. Pan B., Ruhan A., Guo Y., Zhang L., Wei B. et al. An experimental study on the complex resistivity of fractured rock under diferent saturation conditions. Acta Geophysica. 2022. Vol. 70, Iss. 3. pp. 1061–1081.
13. Khmelevskiy V. K., Shevnin V. A. (Eds.). Electric Exploration by Resistivity Method : Tutorial. Moscow : Izdatelstvo MGU, 1994. 160 p.
14. Ermolin E. Yu., Ingerov O., Yankilevich A. A., Pokrovskaya N. N. AMT soundings in the dead band within the Chukotka region (Russian Far East). Journal of Mining Institute. 2019. Vol. 236. pp. 125–132.
15. Ananyev V. V., Grigoryev G. S., Gorelik G. D. Physical modeling of the Bazhenov formation in combination with CSEM and seismic methods. Topical Issues of Rational Use of Natural Resources. 2021. E3S Web of Conferences. 2021. Vol. 266. ID 07003.
16. Haugland S. M. Frequency dispersion effects on LWD propagation resistivity measurements. Annual Technical Conference and Exhibition. Dallas, 2005.
17. Epov M. I., Antonov E. Yu. Forward problems of electromagnetic soundings with allowance for the dispersion of geoelectrical parameters. Izvestiya, Physics of the Solid Earth. 1999. Vol. 35, No. 4. pp. 298–305.
18. Dortman N. B. (Ed.). Petrophysics : Handbook. Moscow : Nedra, 1992. Book. 1. Rocks and Minerals. 391 p.
19. Zinchuk N. N., Bondarenko A. T., Garat M. N. Petrophysics of Kimberlites and Enclosing Rocks. Moscow : Nedra, 2002. 695 p.
20. Balkhanov V. K. Basic Fractal Geometry and Fractal Computation. Ulan-Ude : Izdatelstvo Buryatskogo gosuniversiteta, 2013. 224 p.
21. Balkhanov V. K., Advokatov V. R., Bashkuev Yu. B. Frequency and spatial characteristics of the electrophysical parameters of a living tree trunk. Technical Physics. 2010. Vol. 55, No. 2. pp. 303–305.
22. Pecherin V. N., Demchenko N. P. Determination of Electric Resistivity and Acoustic Properties of Rocks : Procedural Guidelines. Ukhta : UGGA, 2014. 23 p.
23. Kalinin D. F., Yanovskaya Yu. A., Dolgal A. S. Statistical methods for potential fields interpretation: studies of structural and tectonic architecture of oil and gas promising territories. Geologiya Nefti i Gaza. 2021. No. 2. pp. 27–36.
24. Yakovleva A. A., Movchan I. B., Medinskaia D. K., Sadykova Z. I. Quantitative interpretations of potential fields: from parametric to geostructural recalculations. Bulletin of the Tomsk Polytechnic University, Geo Assets Engineering. 2023. Vol. 334, No. 11. pp. 198–215.

25. Sychev Yu. A., Kostin V. N., Serikov V. A., Aladin V. A. Nonsinusoidal modes in power-supply systems with nonlinear loads and capacitors in mining. MIAB. 2023. No. 1. pp. 159–179.
26. Liu H., Jie T., Li B., Youming D., Chunning Q. Study of the low-frequency dispersion of permittivity and resistivity in tight rocks. Journal of Applied Geophysics. 2017. Vol. 143. pp. 141–148.
27. Shestakov A. F. On the relation of the polarization characteristics of the medium in the frequency areas and their evaluation according to multi-frequency measurements. Uralskiy geofizicheskiy vestnik. 2022. No. 3(49). pp. 4–13.
28. Shestakov A. F. To estimation of polarization characteristics of the medium on the data of multi-frequency measurements in the method alternating current resistance. Izvestiya Uralskogo gosudarstvennogo gornogo universiteta. 2021. No. 1(61). pp. 102–108.
29. Levshin M. V. Influence of the frequency of the electric signal on the measured specific resistance in the electrophysical approach to estimatе the properties of soils in the humid zone. Vestnik agrarnoy nauki Dona. 2020. No. 3(51). pp. 26–31.
30. Han Y., Wang Y., Tan C., Du L. Experimental study on influencing factors of soil complex resistivity. Journal of Physics: Conference Series. 2023. Vol. 2651. ID 012104.
31. Sternberg B. K., Levitskaya T. M. Electrical parameters of soils in the frequency range from 1 kHz to 1 GHz, using lumped-circuit methods. Radio Science. 2001. Vol. 36, No. 4. pp. 709–719.
32. Shakhnazarov K. Yu., Vologzhanina S. A., Khuznakhmetov R. M. A relationship between abnormal electrical properties in non-ferrous alloys and phase equilibrium diagrams. Tsvetnye Metally. 2024. No. 2. pp. 53–59.
33. Shklyarskiy Ya. E., Skamyin A. N., Shklyarskiy A. Ya. Effect of higher harmonics on electric power metering in a steel maker’s power networks. Tsvetnye Metally. 2020. No. 10. pp. 64–69.
34. Mikhalev Yu. G., Zharinova N. Yu. Mass transfer regimes during polarization of liquid metal electrode in molten salts and current efficiency. Tsvetnye Metally. 2019. No. 9. pp. 32–36.
35. Buvakov S. Yu., Suvorov D. V., Gololobov G. P., Tarabrin D. Yu., Slivkin E. V. Study of frequency dependence of composite conductor electrical resistance. Nauchnyi vestnik Novosibirskogo gosudarstvennogo tekhnicheskogo universiteta. 2017. Vol. 66, No. 1. pp. 147–158.
36. Senchina N. P., Mingaleva T. A. Multi-feature petrophysical classification of rocks as a basis for interpretation of geophysical data. Izvestiya Saratovskogo universiteta. Novaya seriya. Seriya: Nauki o Zemle. 2022. Vol. 22, Iss. 3. pp. 208–218.
37. Zhamaletdinov A. A. The Earth crust conductance inside Russia and in adjacent countries. Voprosy geofiziki. 2006. No. 39. pp. 69–90.

Language of full-text русский
Полный текст статьи Получить
Назад